TY - GEN
T1 - Capacity of pervasive camera based communication under perspective distortions
AU - Ashok, Ashwin
AU - Jain, Shubham
AU - Gruteser, Marco
AU - Mandayam, Narayan
AU - Yuan, Wenjia
AU - Dana, Kristin
PY - 2014
Y1 - 2014
N2 - Cameras are ubiquitous and increasingly being used not just for capturing images but also for communicating information. For example, the pervasive QR codes can be viewed as communicating a short code to camera-equipped sensors and recent research has explored using screen-to-camera communications for larger data transfers. Such communications could be particularly attractive in pervasive camera based applications, where such camera communications can reuse the existing camera hardware and also leverage from the large pixel array structure for high data-rate communication. While several prototypes have been constructed, the fundamental capacity limits of this novel communication channel in all but the simplest scenarios remains unknown. The visual medium differs from RF in that the information capacity of this channel largely depends on the perspective distortions while multipath becomes negligible. In this paper, we create a model of this communication system to allow predicting the capacity based on receiver perspective (distance and angle to the transmitter). We calibrate and validate this model through lab experiments wherein information is transmitted from a screen and received with a tablet camera. Our capacity estimates indicate that tens of Mbps is possible using a smartphone camera even when the short code on the screen images onto only 15% of the camera frame. Our estimates also indicate that there is room for at least 2.5x improvement in throughput of existing screen - camera communication prototypes.
AB - Cameras are ubiquitous and increasingly being used not just for capturing images but also for communicating information. For example, the pervasive QR codes can be viewed as communicating a short code to camera-equipped sensors and recent research has explored using screen-to-camera communications for larger data transfers. Such communications could be particularly attractive in pervasive camera based applications, where such camera communications can reuse the existing camera hardware and also leverage from the large pixel array structure for high data-rate communication. While several prototypes have been constructed, the fundamental capacity limits of this novel communication channel in all but the simplest scenarios remains unknown. The visual medium differs from RF in that the information capacity of this channel largely depends on the perspective distortions while multipath becomes negligible. In this paper, we create a model of this communication system to allow predicting the capacity based on receiver perspective (distance and angle to the transmitter). We calibrate and validate this model through lab experiments wherein information is transmitted from a screen and received with a tablet camera. Our capacity estimates indicate that tens of Mbps is possible using a smartphone camera even when the short code on the screen images onto only 15% of the camera frame. Our estimates also indicate that there is room for at least 2.5x improvement in throughput of existing screen - camera communication prototypes.
UR - https://www.scopus.com/pages/publications/84901358246
U2 - 10.1109/PerCom.2014.6813951
DO - 10.1109/PerCom.2014.6813951
M3 - Conference contribution
AN - SCOPUS:84901358246
SN - 9781479934454
T3 - 2014 IEEE International Conference on Pervasive Computing and Communications, PerCom 2014
SP - 112
EP - 120
BT - 2014 IEEE International Conference on Pervasive Computing and Communications, PerCom 2014
PB - IEEE Computer Society
T2 - 12th IEEE International Conference on Pervasive Computing and Communications, PerCom 2014
Y2 - 24 March 2014 through 28 March 2014
ER -